Physiology Weihenstephan, ZIEL, Technische Universitaet Muenchen, Freising, Germany.
J Anim Physiol Anim Nutr (Berl). 2014 Feb;98(1):84-95. doi: 10.1111/jpn.12039. Epub 2013 Feb 13.
The objective of the study was to investigate selected key regulatory pathways of milk protein biosynthesis in primary bovine mammary epithelial cells (MECs) of dairy cows during the first 155 days of lactation. In addition, cows were exposed to feed restriction for a short period (FR) during different stages of lactation (week 4 and 21 pp) to study adjustment processes of molecular protein biosynthesis to metabolic challenge. Morning milk samples from twenty-four Holstein-Friesian cows were collected throughout the experimental period (n = 10 per animal). MEC from raw milk were purified using an immunomagnetic separation technique and used for real-time quantitative PCR analyses. As was seen in transcript abundances of all major milk proteins, mRNA levels of E74-like factor 5 (ELF5), an enhancer of signal transducer and activator of transcription (STAT) action, concomitantly decreased towards mid-lactation. Expression of ELF5 as well as of all milk protein genes showed a similar increase during FR in early lactation. Occasional changes in expression could be seen in other Janus kinase (JAK)/STAT factors and in mammalian target of rapamycin (mTOR) pathway elements. Amino acid transfer and glucose transporter and the β-casein expression were also partially affected. In conclusion, our findings suggest a pivotal role of the transcription factor ELF5 in milk protein mRNA expression with complementary JAK/STAT and mTOR signalling for the regulation of protein biosynthesis in the bovine mammary gland.
本研究的目的是在奶牛哺乳期的头 155 天内,研究初乳期奶牛乳腺上皮细胞(MEC)中乳蛋白生物合成的特定关键调控途径。此外,还在泌乳期的不同阶段(第 4 周和第 21 天)对奶牛进行了短期(FR)饲料限制处理,以研究分子蛋白生物合成对代谢挑战的调整过程。在整个实验期间,从 24 头荷斯坦-弗里森奶牛中采集了晨奶样本(n = 10/动物)。使用免疫磁珠分离技术从初乳中纯化 MEC,并用于实时定量 PCR 分析。正如所有主要乳蛋白的转录丰度所看到的,信号转导和转录激活因子(STAT)作用增强子 E74 样因子 5(ELF5)的 mRNA 水平在泌乳中期同时下降。ELF5 的表达以及所有乳蛋白基因的表达在泌乳早期 FR 期间均显示出相似的增加。在其他 Janus 激酶(JAK)/STAT 因子和雷帕霉素靶蛋白(mTOR)途径元件中也可以看到表达的偶尔变化。氨基酸转运和葡萄糖转运体以及β-酪蛋白的表达也受到一定程度的影响。总之,我们的研究结果表明转录因子 ELF5 在乳蛋白 mRNA 表达中具有关键作用,JAK/STAT 和 mTOR 信号通路互补,共同调节奶牛乳腺中的蛋白质生物合成。